collaborators

11 papers

physics.ins-det2026

Calibration and Performance of Germanium High Voltage Detectors for SuperCDMS SNOLAB

M. F. Albakry, I. Alkhatib, D. Alonso-González +140

As SuperCDMS SNOLAB is getting ready to search for low mass dark matter particles, using cryogenic Ge and Si detectors, a set of six of the new SuperCDMS High Voltage (HV) detector…

physics.ins-det2026

Performance of a SuperCDMS HVeV Detector with Sub-eV Energy Resolution and Single Charge-sensitivity

Kyle Kennard, Aditi Pradeep, Mason Buchanan +41

We present a detailed characterization of a new generation of athermal-phonon single-charge sensitive Si HVeV detectors, the best of which achieved 589~meV~~5~meV baseline res…

hep-ex2026

Search for low-mass electron-recoil dark matter using a single-charge sensitive SuperCDMS-HVeV Detector

SuperCDMS Collaboration, M. F. Albakry, I. Alkhatib +146

We present constraints on low-mass dark matter electron scattering and absorption interactions using a SuperCDMS high-voltage eV-resolution (HVeV) detector. Data were taken undergr…

physics.ins-det2026

A First Demonstration of the SQUAT Detector Architecture: Direct Measurement of Resonator-Free Charge-Sensitive Transmons

H. Magoon, T. Aralis, T. Dyson +18

The Superconducting Quasiparticle-Amplifying Transmon (SQUAT) is a new sensor architecture for THz (meV) detection based on a weakly charge-sensitive transmon directly coupled to a…

physics.ins-det2025

Low-Energy Calibration of SuperCDMS HVeV Cryogenic Silicon Calorimeters Using Compton Steps

SuperCDMS Collaboration, M. F. Albakry, I. Alkhatib +148

Cryogenic calorimeters for low-mass dark matter searches have achieved sub-eV energy resolutions, driving advances in both low-energy calibration techniques and our understanding o…

physics.ins-det2025

Broadband Optical Modulation and Control at Millikelvin Temperatures

N. Tabassum, T. Aralis, J. Anczarski +17

A universal experimental challenge when studying radiation effects on cryogenic devices is to precisely and accurately characterize the position-dependent device response very near…